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    • 21. 发明专利
    • Gateway apparatus
    • 网关设备
    • JP2003283505A
    • 2003-10-03
    • JP2002088111
    • 2002-03-27
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOIZUMI YOSHIAKIHIGUMA TOSHIYASUITO YOSHIAKI
    • H04L12/28H04L12/46
    • PROBLEM TO BE SOLVED: To provide a gateway apparatus in which it is not necessary for a user to register an address every time or to request or confirm an address deletion.
      SOLUTION: In the gateway apparatus for bidirectionally exchanging data with a home network equipment or bidirectionally exchanging data with a device connected to a wire LAN by radio communications, the gateway apparatus is provided with a human body detection means and a short distance radio communication means. While the human body detection means detects a human body, a polling signal is transmitted by the short distance radio communication means and based upon a response signal at such a time, a management table containing the equipment class of the home network equipment under its management and an equipment address is prepared. When the human body detection means is changed from the state of detecting the human body to the state of detecting no human body, the polling signal is sent in a short time with a time point of the change into the state of detecting no human body as an origin and based upon a response signal at such a time, the management table of the home network equipment under its management is prepared.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种网关装置,其中用户不需要每次注册地址或者要求或确认地址删除。 解决方案:在与家庭网络设备进行双向交换数据的网关设备中,或者通过无线通信与连接到有线局域网的设备进行双向交换数据的网关设备中,网关设备设置有人体检测装置和短距离无线电 沟通方式。 当人体检测装置检测人体时,轮询信号由短距离无线电通信装置发送,并且基于这种时间的响应信号,包含其管理下的家庭网络设备的设备类别的管理表和 准备了设备地址。 当人体检测装置从检测人体的状态改变为不检测人体的状态时,轮询信号在短时间内被发送到没有人体检测的状态 作为起源,并且在这样的时间基于响应信号,准备其管理的家庭网络设备的管理表。 版权所有(C)2004,JPO
    • 23. 发明专利
    • Solar cell string diagnostic system
    • 太阳能电池诊断系统
    • JP2013156125A
    • 2013-08-15
    • JP2012016277
    • 2012-01-30
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIHARA NAOYUKIHIGUMA TOSHIYASU
    • G01R31/26G01R31/02H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To provide a solar cell string diagnostic system capable of easily estimating the position of a defect in a solar cell string when the defect occurs.SOLUTION: A storage section 116 stores assumption propagation time information 132 showing assumption propagation time assumed to be needed for propagating a signal in a solar cell string 101 without a defect. A signal generator 112 outputs a signal to a positive electrode of the solar cell string 101 from an output end 122. An observation device 113 observes the signal at the output end 122. A control device 117 measures a solar cell string propagation time for propagating the signal in the solar cell string 101 on the basis of a time until a first reflection signal reflecting in the solar cell string 101 is detected by the observed signal after the signal is output. The control device 117 estimates the position of a defect in the solar cell string 101 on the basis of the solar cell string propagation time and the assumption propagation time.
    • 要解决的问题:提供一种当缺陷发生时能够容易地估计太阳能电池串中的缺陷的位置的太阳能电池串诊断系统。解决方案:存储部分116将假设传播时间信息132存储在假设传播时间假定为 需要用于在太阳能电池串101中传播信号而没有缺陷。 信号发生器112从输出端122向太阳能电池串101的正电极输出信号。观察装置113观察输出端122处的信号。控制装置117测量太阳能电池串传播时间,以传播 基于在信号输出后通过观测信号检测在太阳能电池串101中反射的第一反射信号之前的时间,太阳能电池串101中的信号。 控制装置117基于太阳能电池串传播时间和假设传播时间来估计太阳能电池串101中的缺陷的位置。
    • 24. 发明专利
    • Air-conditioning equipment control adapter and air-conditioning equipment
    • 空调设备控制适配器和空调设备
    • JP2013145333A
    • 2013-07-25
    • JP2012006220
    • 2012-01-16
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOIZUMI YOSHIAKIHIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • G10L15/28F24F11/02G10L15/00
    • PROBLEM TO BE SOLVED: To prevent voice recognition from being started with unintended timing.SOLUTION: A communication circuit 40 performs serial communication with air-conditioning equipment connected via a communication wire 5. A sound recognition circuit 42 analyses and recognizes the voice of a user inputted through a receiving microphone 41, and outputs a recognition result thereof to a microcomputer 43. When the current processing state of the microcomputer 43 is a voice recognition controlling state, the microcomputer 43 generates control data for controlling the air-conditioning equipment on the basis of the recognition result obtained by the voice recognition circuit 42 and transmits the control data to the air-conditioning equipment via the communication circuit 40. When the microcomputer 43 recognizes that a plural different keywords are uttered by the user at time intervals in a prescribed range, the microcomputer 43 sets the current processing state to a voice recognition controlling state.
    • 要解决的问题:防止语音识别以非期望的时机开始。解决方案:通信电路40与通过通信线5连接的空调设备进行串行通信。声音识别电路42分析并识别用户的语音 通过接收麦克风41输入,并将其识别结果输出到微型计算机43.当微型计算机43的当前处理状态是语音识别控制状态时,微型计算机43产生用于控制空调设备的控制数据 通过语音识别电路42获得的识别结果,并且经由通信电路40将控制数据发送到空调设备。当微型计算机43识别出用户在规定范围内以时间间隔发出多个不同的关键字时 微型计算机43将当前处理状态设定为声音识别 控制状态。
    • 25. 发明专利
    • Non-contact power receiving/feeding apparatus
    • 非接触式电力接收/送料装置
    • JP2013013318A
    • 2013-01-17
    • JP2012175270
    • 2012-08-07
    • Mitsubishi Electric Corp三菱電機株式会社
    • KOIZUMI YOSHIAKIHIGUMA TOSHIYASUYABE MASAAKITORIYAMA KUNIAKI
    • H02J17/00B60L11/18B60M7/00H01F38/14
    • Y02T10/7005
    • PROBLEM TO BE SOLVED: To provide a non-contact power receiving/feeding apparatus in which power can be supplied from a power feeding apparatus to a power receiving apparatus even if there is a fixed error in a position of the power receiving apparatus with respect to the power feeding apparatus.SOLUTION: A non-contact power receiving/feeding apparatus comprises a power feeding apparatus 4 which includes a plurality of power feeding coils 2 and supplies an AC current to the power feeding coils 2, and a power receiving apparatus 3 which includes a power receiving coil 1 and receives power from the power feeding apparatus 4 via electromagnetic induction. The power feeding coils 2 are comprised of rod-like coils, and the rod-like coils are disposed while being deviated from each other in an axial direction just by a distance of a half coil length. The power feeding apparatus 4 selects a power feeding coil 2 which is capable of feeding power to the power receiving apparatus 3 from among the power feeding coils 2 and supplies an AC current to the selected power feeding coil 2.
    • 解决的问题:即使在受电装置的位置存在固定误差的情况下,也可以提供从供电装置向受电装置供电的非接触式供电装置 相对于供电装置。 解决方案:非接触式电力接收/馈送装置包括:馈电装置4,其包括多个供电线圈2,并且向供电线圈2提供AC电流;以及电力接收装置3,其包括: 受电线圈1,并通过电磁感应从电力供给装置4接收电力。 供电线圈2由杆状线圈组成,棒状线圈沿轴向偏离半线圈长度的距离而相互配置。 供电装置4选择能够从供电线圈2向受电装置3供电的供电线圈2,并向所选择的供电线圈2供给AC电流。版权所有(C) )2013,JPO&INPIT
    • 26. 发明专利
    • Diagnostic device, photovoltaic power generation system and diagnostic method
    • 诊断装置,光伏发电系统及诊断方法
    • JP2012191000A
    • 2012-10-04
    • JP2011053126
    • 2011-03-10
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • H01L31/04
    • Y02E10/50
    • PROBLEM TO BE SOLVED: To diagnose a photovoltaic power generation system in a short time.SOLUTION: An electronic load unit 9, by letting part of direct current supplied from solar battery strings 4A, 4B consumed by loads 12A, 12B, measures the voltage values applied to the loads 12A, 12B and the current values applied to the loads 12A, 12B. A control and display unit 10, with electromagnetic switches 5A, 5B turned off, adjusts the loads 12A, 12B and, while so doing, calculates I-V characteristics of the solar battery strings 4A, 4B from the relationship between the current and the voltage values measured by the electronic load unit 9. And, by considering the amount of solar radiation detected by a solar radiation amount sensor 7 and the temperature detected by a temperature sensor 8, it compares the calculated I-V characteristics and standard I-V characteristics based on standard amount of solar radiation and standard temperature, thereby determining whether the solar battery strings 4A, 4B are normal or abnormal.
    • 要解决的问题:在短时间内诊断光伏发电系统。 解决方案:电子负载单元9通过使由负载12A,12B消耗的太阳能电池串4A,4B供应的直流电的一部分测量施加到负载12A,12B的电压值和施加到负载12A,12B的电流值 负载12A,12B。 电磁开关5A,5B关闭的控制和显示单元10调节负载12A,12B,同时根据测量的电流和电压值之间的关系来计算太阳能电池串4A,4B的IV特性 通过考虑由太阳辐射量传感器7检测到的太阳辐射量和由温度传感器8检测到的温度,其根据标准的太阳能量比较计算的IV特性和标准IV特性 辐射和标准温度,从而确定太阳能电池串4A,4B是正常还是异常。 版权所有(C)2013,JPO&INPIT
    • 27. 发明专利
    • Electric equipment operation detection system, electric equipment operation detection method, device for use therein, and program
    • 电气设备操作检测系统,电气设备操作检测方法,用于其的设备和程序
    • JP2012161166A
    • 2012-08-23
    • JP2011019294
    • 2011-01-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • HIGUMA TOSHIYASUKUSHIRO NORIYUKIITO YOSHIAKIHIHARA NAOYUKIKATSUKURA MAKOTOOGAWA YUKI
    • H02J13/00G01R27/02
    • PROBLEM TO BE SOLVED: To provide an electric equipment operation detection system that detects whether an indoor operation detection object electric apparatus is operated in a simple configuration.SOLUTION: An electric equipment detection device 14 includes: a transmission section for transmitting to a power line 12 a transmission signal whose frequency changes continuously in a specific bandwidth including a specific frequency; a reception section for receiving the transmission signal transmitted to the power line 12 by the transmission section and acquiring a measured signal measuring an impedance of the power line 12; and a CPU for detecting whether or not a signal of the specific frequency is included in the measured signal acquired by the reception section. A variable impedance device 15 includes: a power circuit for generating a voltage in response to an electromotive force induced by electromagnetic coupling with a current flowing through the power line 12 while an electric apparatus 13b is in operation; and a variable impedance circuit for changing an impedance of the power line 12 in response to the specific frequency included in the transmission signal transmitted to the power line 12 while the electric apparatus 13b is in operation.
    • 要解决的问题:提供一种电气设备操作检测系统,其以简单的配置来检测室内操作检测对象电气设备是否被操作。 电气设备检测装置14包括:发送部,用于向电力线12发送其频率在包括特定频率的特定带宽中连续变化的发送信号; 接收部分,用于接收由发送部分发送到电力线12的发送信号,并获取测量电力线12的阻抗的测量信号; 以及CPU,用于检测由接收部分获取的测量信号中是否包括特定频率的信号。 可变阻抗装置15包括:电力电路,用于响应于电磁耦合引起的电动势,电流装置13b在运行时通过电力线12流过电流而产生电压; 以及可变阻抗电路,用于响应于在电气设备13b运行时发送到电力线12的发送信号中包括的特定频率来改变电力线12的阻抗。 版权所有(C)2012,JPO&INPIT
    • 28. 发明专利
    • Life scene specifying device, life scene specifying program and life scene specifying method
    • 生活场景指定装置,生活场景规划方案和生活场景规范方法
    • JP2012159932A
    • 2012-08-23
    • JP2011017906
    • 2011-01-31
    • Mitsubishi Electric Corp三菱電機株式会社
    • KUSHIRO NORIYUKIHIGUMA TOSHIYASUITO YOSHIAKIHIHARA NAOYUKIKATSUKURA MAKOTOOGAWA YUKI
    • G06Q10/00G08B25/04H04M11/00
    • PROBLEM TO BE SOLVED: To provide a life scene specifying device, a life scene specifying program and a life scene specifying method capable of specifying user's life scenes more accurately.SOLUTION: A life scene specifying device 290 includes a signal acquisition unit 291 for acquiring an output/input signal which expresses user's entering or leaving a room and a measured value signal which expresses a measured value of a current flowing through a power line for supplying power to a device used in the room. The life scene specifying device 290 also includes an operation specifying unit 292 for specifying an operation of the device based on the acquired measured value signal and an event detecting unit 293 for detecting an occurrence of an event that the user leaves the room based on the duration time of the specified operation and the time when the output/input signal is acquired. Further, the life scene specifying device 290 includes a life scene specifying unit 295 for specifying the user's life scene based on the event detection result and the specified device operation.
    • 要解决的问题:提供能够更精确地指定用户生活场景的生活场景指定装置,生活场景指定程序和生活场景指定方法。 解决方案:生命场景指定装置290包括用于获取表示用户进入或离开房间的输出/输入信号的信号获取单元291和表示流经电力线的电流的测量值的测量值信号 用于向房间中使用的设备供电。 生命场景指定装置290还包括用于基于获取的测量值信号指定装置的操作的操作指定单元292和用于基于持续时间来检测用户离开房间的事件的发生的事件检测单元293 指定操作的时间和获取输出/输入信号的时间。 此外,生活场景指定装置290包括基于事件检测结果和指定的装置操作来指定用户的生活场景的生命场景指定单元295。 版权所有(C)2012,JPO&INPIT
    • 30. 发明专利
    • Air conditioning system
    • 空调系统
    • JP2011163763A
    • 2011-08-25
    • JP2011125695
    • 2011-06-03
    • Mitsubishi Electric Corp三菱電機株式会社
    • MUKAI TAKUYAHIGUMA TOSHIYASUKUSHIRO NORIYUKI
    • F24F11/02
    • PROBLEM TO BE SOLVED: To provide an air conditioning system easily coping with an increase of air conditioning equipment. SOLUTION: The air conditioning system includes one or more distributed management devices 11 managing the air conditioning equipment connected in communication by a local bus 21, and having a first storage means 51 for storing data of attribute information indicating the condition of the air conditioning equipment, and a centralized management device 12 connected in communication with the one or more distributed management devices 11 through a main bus 22 to manage the air conditioning equipment in the system and having a second storage means 61 storing data of attribute information related to the air conditioning equipment in the system. The distributed management device 11 further includes a first monitoring control means 52 performing update processing of the data of attribute information stored in the first storage means 51 and storing data of attribute information related to updating in a DB synchronous file, and a main bus side communication means 54. The centralized management device 12 further includes a centralized management communication means 64 and a second monitoring control means 62 performing update processing of the data of attribute information stored in the second storage means 61. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供空调系统容易应对空调设备的增加。 解决方案:空调系统包括一个或多个分布式管理装置11,其管理由局部总线21进行通信连接的空调设备,并具有第一存储装置51,用于存储指示空中状态的属性信息的数据 空调设备和通过主总线22与一个或多个分布式管理设备11通信的集中管理设备12,以管理系统中的空调设备,并具有存储与 空调设备在系统中。 分散管理装置11还包括:第一监视控制装置52,执行存储在第一存储装置51中的属性信息的数据的更新处理,并将与DB更新相关的属性信息的数据存储在DB同步文件中;以及主总线侧通信 集中管理装置12还包括集中管理通信装置64和执行对存储在第二存储装置61中的属性信息的数据的更新处理的第二监视控制装置62.版权所有(C)2011, JPO&INPIT